![]() Your iTunes Account will be charged after you confirm your subscription. You can renew any of these subscriptions automatically: You can choose the most convenient subscription period: In our app you can get a subscription to VIP-status which will make the following available to you: In just 5 minutes on Topface, more than 50 people will be interested in meeting with you, your profile will get more than 100 likes, and your photos will gather more than 20 comments! To start using the application, register, or just use your Facebook account. 100 million people around the world are already using Topface, to match for people they are interested in. To use Topface, you don’t need to pay any money When using Topface, you’ll see that you can meet with those who you want. It can be used to find new friends for keeping in touch, communicating, and possibly for other things as well. Make sure that the link is for Anyone to download the file.Topface allows you to find interesting people, girls, and guys with similar interests and hobbies all around the world. Upload that file to your Google Drive (if you use Gmail) or OneDrive or other file sharing service and put the link to that file in your reply. If you can share your model, I can show you what I mean. That will allow those faces to be meshed with shell elements which will take many fewer nodes and elements than is needed to mesh the solid body of the tubes. Hope that makes sense.Īt some point, it might be worth replacing the solid bodies for each tube with sheet bodies of the outer faces. That would help keep the container together with just frictional contact. If instead the rubber spacers on the left wall were two alumimum tube width shorter, while the rubber spacers on the adjacent walls were two aluminum tubes longer, then the corner edge of the container would have rubber on the short side that reached under a long side aluminum tube. All the aluminum tubes and rubber spacers are the same length and are not attached in any way to the adjacent walls. Look at the left wall in the image below. This allows the model to solve without the soil, but is this model supposed to represent a real assembly? In a real assembly, are the parts actually glued together? If they are not actually glued together, then any side load on the wall would cause it to topple over. You said all the parts are held together with Bonded Contact. Apply a Fixed Support to the side wall of the soil block as well as the bottom face. Now the side walls are far from the rubber block. What might work is to increase the soil block by 4 times its current dimensions in length, width and depth. Are they bulging out with the weight of the rubber above it? Maybe the reason this model will not converge with a M-C soil material is because stress develops in the material which it cannot support. How is it connected to the rubber sheet touching it? Is it Bonded Contact? Look at the side walls of that “soil” block. That block has a Fixed Support on the bottom. Solve this and look at the stress on the sides of the “soil” block. In the model of the stacked rubber sheets that has rectangular sheet on the bottom representing soil, change the material from soil to a linear elastic isotropic material. Mesh the cube with 1 linear element so there are only 8 nodes. On one opposite face, apply a Displacement load such as a small amount of compression or a small amount of tension. Use Frictionless support on three sides of the cube that share one corner. One way to gain experience with the material model is with a unit cube. ![]() I have a little experience with the Mohr-Coulomb material model. That might help it converge for at least a few substeps. ![]() Try setting up Automatic Time Stepping and using an Initial and Minimum Substep to be 1000.
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